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开放式空气CO_2浓度增高对水稻产量形成的影响 被引量:30

Effects of free-air CO_2 enrichment(FACE) on yield formation in rice (Oryza sativa).
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摘要 在大田栽培条件下 ,研究开放式空气CO2 浓度增加 (FACE) 2 0 0 μmol·mol-1的处理对水稻产量及产量构成因素的影响 .结果表明 ,FACE处理对水稻株高和主茎叶片数没有明显影响 ,但使水稻生育进程加快 ,全生育期显著缩短 ,增加施N量可减缓FACE处理对水稻全生育期缩短的程度 ;FACE处理能显著增加分蘖数 ,极显著增加穗数 ,提高结实率 ,但使每穗颖花数显著减少 ;FACE处理能显著提高水稻产量 ,在高N条件下增产幅度更大 ;提高FACE处理的每穗颖花数和单位面积颖花数能极显著提高水稻产量 ,增加施N量是提高FACE处理每穗颖花数和单位面积颖花数的重要措施 . Effect of Free-Air CO 2 enrichment (FACE,200μmol·mol~ -1 higher than CK) on rice yield and its components under field condition were studied with a Japonica variety 99-15. Results showed that FACE treatment had no obvious effect on plant height and number of leaves on main stem, but could quicken growth process of rice, shorten the whole growth duration. Increment of nitrogen application rate could weaken the effect of FACE on whole growth duration. The number of tillers and panicles, and fulfilled-grain percentage increased significantly under FACE treatment, whereas spikelets per panicle decreased.FACE treatment could significantly increase grain yield of rice, especially when higher rate of nitrogen fertilizer was applied.Increasing spikelets per panicle and spikelets per unit area under FACE treatment would result in marked increment of rice yield. Increasing nitrogen application rate was an important approach to increase spikelets per panicle and spikelets per unit area under FACE treatment.
出处 《应用生态学报》 CAS CSCD 2002年第10期1210-1214,共5页 Chinese Journal of Applied Ecology
基金 中国科学院知识创新重要方向项目 (KZCX 2 40 8) 国家自然科学基金重大国际合作研究资助项目 (4 0 12 0 14 0 817) .
关键词 开放式空气CO2浓度增高 水稻 产量构成因素 Rice, Free-air CO 2 enrichment (FACE), Yield, Yield components.
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  • 1Allen Jr.1992.Free-air CO2 enrichment field experiment: An historical overview.Crit Rev Plant Sci,11:121~134
  • 2Arp WJ.1991.Effects of source-sink relations on photosynthetic acclimation to elevated CO2.Plant Cell Environ,14:869~875
  • 3Daepp M, Suter D, Almeida JPF,et al.2000.Yield response of Lolium perenne swards to free air CO2 enrichment increased over six years in a high N input system on fertile soil.Glob Change Biol,6:805~816
  • 4Drake BG, Gonzalez MA, Long SP.1997.More efficient plants: A consequence of rising atmospheric CO2.Ann Rev Plant Physiol Plant Mol Biol,48:609~639
  • 5Dugas WA, Pinter PJ.1994.Agriculture and forest meteorology: A new field approach to assess the biological consequences of global change.Agric For Meteorol,70:1~342
  • 6Ellsworth DS.1999.CO2 enrichment in a maturing pine forest: are CO2 exchange and water status in the canopy affected?Plant Cell Environ,22:461~472
  • 7Hebeisen TA, Luscher S,Zanetti BU,et al.1997.Growth response of Trifolium repens L.and Lolium perenne L.as monocultures and bi-species mixture to free air CO2 enrichment and management.Glob Change Biol,3:149~160
  • 8Hendrey GR, Lewin KF,Nagy J.1993.Free air carbon dioxide enrichment: development,progress and results. Vegetation,104/105:17~31
  • 9Houghton JT, Meira-Filho LG, Callander BA,et al.1996.Climate Change 1995.In:The Science of Climate Change.Cambridge:Cambridge University Press.572
  • 10Imai K.1988.Carbon dioxide and crop production.Jap J Crop Sci, 57(2):380-391

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